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Transcriptomic changes during maize roots development responsive to Cadmium (Cd) pollution using comparative RNAseq-based approach

机译:使用基于RNAseq的比较方法,玉米根系发育过程中的转录组变化对镉(Cd)污染的响应

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The heavy metal cadmium (Cd), acts as a widespread environmental contaminant, which has shown to adversely affect human health, food safety and ecosystem safety in recent years. However, research on how plant respond to various kinds of heavy metal stress is scarcely reported, especially for understanding of complex molecular regulatory mechanisms and elucidating the gene networks of plant respond to Cd stress. Here, transcriptomic changes during Mo17 and B73 seedlings development responsive to Cd pollution were investigated and comparative RNAseq-based approach in both genotypes were performed. 115 differential expression genes (DEGs) with significant alteration in expression were found co-modulated in both genotypes during the maize seedling development; of those, most of DGEs were found comprised of stress and defense responses proteins, transporters, as well as transcription factors, such as thaumatin-like protein, ZmOPR2 and ZmOPR5. More interestingly, genotype-specific transcriptional factors changes induced by Cd stress were found contributed to the regulatory mechanism of Cd sensitivity in both different genotypes. Moreover, 12 co-expression modules associated with specific biological processes or pathways (M1 to M12) were identified by consensus co-expression network. These results will expand our understanding of complex molecular mechanism of response and defense to Cd exposure in maize seedling roots. (C) 2015 Elsevier Inc. All rights reserved.
机译:重金属镉(Cd)是一种广泛的环境污染物,近年来已显示出对人体健康,食品安全和生态系统安全的不利影响。然而,很少有关于植物如何响应各种重金属胁迫的研究的报道,特别是为了了解复杂的分子调控机制并阐明植物对Cd胁迫的基因网络。在这里,调查了在Mo17和B73幼苗发育过程中转录组的变化对Cd污染的响应,并比较了两种基因型中基于RNAseq的方法。在玉米幼苗发育过程中,发现两种基因型共调节了115个表达显着改变的差异表达基因(DEG)。其中,大多数DGE被发现包括应激和防御反应蛋白,转运蛋白和转录因子,如索马甜蛋白样蛋白,ZmOPR2和ZmOPR5。更有趣的是,发现由Cd胁迫诱导的基因型特异性转录因子变化有助于这两种基因型中Cd敏感性的调节机制。此外,通过共有共表达网络确定了与特定生物学过程或途径(M1至M12)相关的12个共表达模块。这些结果将扩大我们对玉米幼苗根部对Cd暴露的响应和防御的复杂分子机制的理解。 (C)2015 Elsevier Inc.保留所有权利。

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